Evolutionary studies of the bHLH transcription factors belonging to MBW complex: their role in seed development

Author:

Zumajo-Cardona Cecilia1,Gabrieli Flavio23,Anire Jovannemar145,Albertini Emidio2ORCID,Ezquer Ignacio1,Colombo Lucia1ORCID

Affiliation:

1. Department of BioScience, Università degli Studi di Milano , Via Celoria 26, 20133 Milano , Italy

2. Agricultural, Food and Environmental Sciences, University of Perugia , Borgo XX Giugno 74, Perugia , Italy

3. Dipartimento di Ingegneria Industriale DII, University of Padua , via Gradenigo, 6/a, Padova , Italy

4. Wageningen UR Plant Breeding , Droevendaalsesteeg 1, NL-6708 PB Wageningen , The Netherlands

5. National Coconut Research Center – Visayas, Visayas State University , Baybay City, Leyte , Philippines

Abstract

Abstract Background and aims The MBW complex consist of proteins belonging to three major families (MYB, bHLH and WDR) involved in various processes throughout plant development: epidermal cell development, mucilage secretory cells and flavonoid biosynthesis. Recently, it has been reported that TT8, encoding a bHLH transcription factor, is involved in the biosynthesis of flavonoids in the seed coat and it also plays a role in bypassing the postzygotic barrier resulting from an unbalance in genetic loads of the parental lines. Here, we focus on the functional evolution, in seed development, of the bHLH proteins that are part of the MBW complex, complemented with a literature review. Methods Phylogenetic analyses performed across seed plants and expression analyses in the reproductive tissues of four selected angiosperms (Arabidopsis thaliana, Brassica napus, Capsella rubella and Solanum lycopersicum) allow us to hypothesize on the evolution of its functions. Key Results TT8 expression in the innermost layer of the seed coat is conserved in the selected angiosperms. However, except for Arabidopsis, TT8 is also expressed in ovules, carpels and fruits. The homologues belonging to the sister clade of TT8, EGL3/GL3, involved in trichome development, are expressed in the outermost layer of the seed coat, suggesting potential roles in mucilage. Conclusions The ancestral function of these genes appears to be flavonoid biosynthesis, and the conservation of TT8 expression patterns in the innermost layer of the seed coat in angiosperms suggests that their function in postzygotic barriers might also be conserved. Moreover, the literature review and the results of the present study suggest a sophisticated association, linking the mechanisms of action of these genes to the cross-communication activity between the different tissues of the seed. Thus, it provides avenues to study the mechanisms of action of TT8 in the postzygotic triploid block, which is crucial because it impacts seed development in unbalanced crosses.

Funder

EMBO Fellowship

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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